世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Min Sun Jung's research lab focuses on translational cancer biology and precision oncology, with a strong emphasis on molecular pathogenesis, therapeutic targeting, and diagnostic innovation in aggressive malignancies such as NUT carcinoma, triple-negative breast cancer, and urothelial carcinoma. The lab integrates multi-omics approaches, immunohistochemistry, and artificial intelligence to decode tumor heterogeneity, improve diagnostic accuracy, and identify novel therapeutic vulnerabilities. A key focus is on metabolic reprogramming in cancer and the repurposing of metabolites like nicotinamide for targeted therapy.
Professor Jung-Man Lee's research lab specializes in airway management and critical care anesthesia, with a strong focus on improving patient safety and outcomes during tracheal intubation. Key research directions include optimizing endotracheal tube design and cuff shape to reduce postoperative complications such as sore throat, evaluating neuromuscular blockade and reversal agents in thyroid surgery, and investigating alternative airway pressure techniques—such as paratracheal compression—to enhance gastric outlet occlusion during rapid sequence intubation. The lab also employs advanced imaging and neuromonitoring to assess glottic visualization and nerve integrity during surgery.
Professor Sung-Ju Jang's research lab specializes in energy-efficient building technologies and advanced optical communication systems. The lab focuses on optimizing energy consumption in commercial and campus buildings through data-driven analysis, simulation, and innovative building-integrated solutions such as green walls and semi-transparent photovoltaic windows. It also explores novel fiber optic technologies for high-capacity, low-loss optical communication, particularly in multicore fiber systems with controlled mode coupling. The integration of intelligent control strategies—combining simulation and machine learning—further enhances daylighting and lighting efficiency in built environments.
Professor Cheonsu Park's research lab specializes in digital signal processing, with a strong focus on efficient and accurate transform algorithms for multimedia signal compression and analysis. The lab investigates advanced video coding techniques, particularly in depth video coding and multiview video compression, aiming to reduce computational complexity while maintaining high compression efficiency. Additionally, the lab explores image forensics and authentication, emphasizing tamper detection and the retrieval of original source images from spliced fakes using hybrid feature extraction methods. Their work bridges theoretical signal processing with practical applications in computer vision, image processing, and multimedia security.
Professor Sung Joo Park's research lab focuses on interdisciplinary biomedical and technological innovation, spanning molecular pharmacology, clinical neurophysiology, placental biology, and digital culture analytics. The lab investigates the anti-inflammatory mechanisms of natural compounds like vanillic acid, evaluates diagnostic accuracy of nerve conduction studies for peripheral nerve disorders, explores the role of Hox genes in placental development, and examines emergent cultural patterns in online collaborative platforms such as Wikipedia. Additionally, the lab contributes to next-generation memory technology development, particularly high-capacity DDR5 modules for big data and cloud computing infrastructure.
Professor Minsoo Shin's research lab focuses on materials processing and metallurgical behavior under extreme conditions, particularly in iron-carbon systems and high-temperature reactions. The lab investigates carburization, melting, and interfacial reactions in iron-based systems using in-situ observation and sessile drop techniques, with applications in steelmaking and sintering processes. Additionally, the lab explores knowledge management and organizational behavior, emphasizing psychological ownership and information sharing in organizations, as well as the sociological dimensions of knowledge flow. A further research stream examines financial risk assessment in the insurance sector, particularly the RBC ratio in life insurance companies using large-scale data analytics.
Professor Soo-Young Yoon's research lab focuses on translational nephrology and clinical biomarker discovery, with a strong emphasis on acute and chronic kidney diseases, including acute kidney injury (AKI) and chronic kidney disease (CKD). The lab investigates novel urinary and systemic biomarkers for early diagnosis, prognosis, and personalized management of kidney disorders, particularly in the context of emerging health challenges such as the COVID-19 pandemic. Additional research directions include immune-mediated drug reactions, such as cephalosporin hypersensitivity, and the pathological mechanisms underlying neurodegenerative and hematopoietic disorders, including Alzheimer’s disease and myeloproliferative syndromes.
Professor Jeong Hwa Lee's research lab focuses on molecular and cellular mechanisms in cancer biology, particularly the role of key regulatory proteins such as TSG-6 and BAG3 in tumor progression and immune modulation. The lab investigates the tumor microenvironment, including immune cell activation and stromal interactions, using in vitro and in vivo models. Additionally, the lab explores endocrine and metabolic dysregulation in disease models, particularly in adrenal and thymic pathologies. A translational approach is applied to understand disease mechanisms and identify potential therapeutic targets in oncology and inflammatory disorders.
Professor Jae Won Jeong's research lab specializes in advanced nanoelectronics and functional materials, focusing on next-generation semiconductor devices and biosensors. Key research directions include the development of multi-value logic transistors using quantum confined transport and mobility edge quantization in zinc oxide-based nanostructures, ultrahigh-density resistive memory devices via block copolymer self-assembly, and novel 3D stacked FET architectures for extreme scaling. The lab also pioneers bio-integrated nanosensors using carbon nanomaterials and conjugated polymer blends for high-sensitivity, stable biosensing applications.
Professor Jae-Woo Kwon's research lab specializes in respiratory medicine and environmental health, focusing on the impact of environmental factors—such as air pollutants, weather conditions, and indoor air quality—on respiratory diseases like asthma and chronic cough. The lab also investigates the complex relationships between obesity and airway hyperresponsiveness, as well as the development and validation of patient-reported outcome measures for chronic cough. Their work bridges clinical research with public health, emphasizing the reliability of standardized questionnaires and the real-world implications of environmental exposures on respiratory health.
Professor Young-Ju Kim's research lab specializes in wireless communication systems, with a focus on interference management, network capacity optimization, and machine learning applications in industrial and biomedical signal processing. The lab investigates advanced techniques for two-tier femtocell networks, including cross-tier interference mitigation, beamforming strategies, and performance analysis using stochastic geometry and outage probability models. Additionally, the lab applies deep learning, particularly stacked denoising autoencoders, to enhance fault detection in semiconductor manufacturing and explores physiological impacts of posture on respiratory function using biomedical signal analysis. The research integrates theoretical modeling with practical applications in telecommunications, smart manufacturing, and healthcare.
Professor Jeong Ho-chang's research lab focuses on advancing safe and effective cell-based therapies using human pluripotent stem cells (hPSCs), with a central emphasis on eliminating the risk of teratoma formation through precise molecular and genetic strategies. The lab investigates the unique molecular signatures and vulnerabilities of undifferentiated hPSCs, particularly targeting apoptosis regulation, RNA metabolism, and mitochondrial dynamics to enable selective elimination of these cells. Key research directions include the development of small molecules, suicide gene systems (e.g., KillerRed), and modulation of RNA processing pathways (e.g., PAPD5/7-mediated adenylation and EXOSC10 degradation) to ensure safe hPSC-derived cell transplantation. The lab also explores the role of key regulators like PRMT8 and survivin in maintaining pluripotency and cell fate decisions.
Professor Jang-hwan Choi's research lab specializes in medical image reconstruction, deep learning for medical diagnostics, and advanced imaging protocols with a focus on improving image quality and diagnostic accuracy in clinical settings. The lab develops innovative motion compensation techniques for weight-bearing CT imaging and applies self-supervised and ensemble deep learning models to detect cancers such as pancreatic and non-small cell lung cancer using multi-modal medical data. Their work emphasizes real-world clinical applicability, including low-dose CT optimization and automated detection in security and medical X-ray systems.
Professor Bae-Gyoon Park's research lab specializes in critical state theory, territorial politics, and the spatial restructuring of capitalist states, with a particular focus on East Asia. The lab explores how state-led development, globalization, and neoliberal governance reshape urban and regional spaces through scalar transformations, special economic zones, and place marketing strategies. It critically examines the interplay between state autonomy, political coalitions, and economic policy in contexts such as South Korea, Singapore, and other East Asian developmental states.
Professor So Hye Lim's research lab specializes in human-computer interaction, digital media psychology, and the psychological impacts of emerging technologies. The lab investigates how users engage with digital environments—particularly in multiplayer online games, smartphones, and AI agents—focusing on avatar identity, social presence, multitasking behaviors, and the psychological drivers behind media use. A central theme is redefining technology use beyond addiction models, emphasizing positive outcomes such as leadership development, social connection, and cognitive engagement.
Professor Song Ih Ahn's research lab specializes in developing advanced microphysiological systems and nanotechnology platforms to address critical challenges in neurological and cardiovascular diseases. The lab focuses on engineering biomimetic models—particularly the blood-brain barrier and vascular endothelium—using microfluidics, 3D bioprinting, and engineered nanocarriers to enable precise drug delivery and disease modeling. Key research directions include enhancing drug penetration across biological barriers, improving the stability and targeting of therapeutic nanoparticles, and creating standardized, reproducible organ-on-a-chip systems for preclinical drug testing.
Professor Bongsoo Jang's research lab specializes in the development and application of advanced numerical and analytical methods for solving complex nonlinear and fractional differential equations arising in fluid dynamics, heat transfer, and mathematical physics. The lab focuses on innovative computational techniques such as modified differential transform methods, predictor-corrector schemes, and spectral methods tailored for fractional-order systems and multiphase flows in porous media. Key research directions include heat transfer in nanofluids, convection in complex geometries, and efficient algorithms for memory-intensive fractional derivatives. The lab emphasizes both theoretical rigor and practical implementation, aiming to deliver high-accuracy, computationally efficient solutions for real-world engineering and scientific problems.
Professor Jae-Hyuk Oh's research lab specializes in nonlinear control systems, aerospace guidance and control, and optimal conflict resolution in air traffic management. The lab focuses on advancing theoretical and practical solutions for missile guidance, particularly the capturability analysis of pure proportional navigation, and develops robust autopilot designs for agile missiles under complex dynamics. It also explores stochastic quantization and holographic renormalization group methods in theoretical high-energy physics, bridging control theory with quantum field theory. The lab emphasizes rigorous mathematical analysis, including Lyapunov-based methods and convex relaxation techniques, to solve real-world problems in aerospace and air traffic systems.
Professor Joo-Hyung Oh's research lab specializes in medical imaging and interventional radiology, with a focus on diagnostic ultrasound applications and image-guided interventions for urological, gastrointestinal, and vascular conditions. The lab investigates innovative, minimally invasive techniques such as sonographically guided needle aspiration for prostatic abscesses and explores the role of imaging in diagnosing rare conditions like nutcracker syndrome and esophageal dissecting intramural hematoma. Additionally, the lab contributes to oncology research, particularly in understanding resistance mechanisms in colorectal cancer and advancing image-based diagnostic and therapeutic strategies. The integration of advanced imaging modalities with clinical interventional approaches defines the lab’s translational research direction.
Professor Jae-hee Woo's research lab specializes in perioperative medicine, with a focus on optimizing anesthetic techniques and understanding their impact on patient recovery and immune function. The lab investigates regional anesthesia strategies—particularly interscalene brachial plexus blocks—aimed at improving postoperative pain control and reducing complications like rebound pain. It also explores the immunomodulatory effects of different anesthetic agents, such as propofol and volatile anesthetics, in surgical patients, especially those undergoing oncologic procedures. Additionally, the lab contributes to clinical airway management strategies in high-risk patients, including those with deep neck infections.